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An Experimental and Numerical Study of Added Mass and Damping for Side-by-Side Plates in Oscillating Flow

机译:振动流动副侧板上加料和阻尼的实验性和数值研究

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Forced harmonic oscillations of nine configurations consisting of horizontal side-by-side plate elements are performed experimentally and numerically. The configurations are oscillated in vertical direction and represent generalized mudmats ofsubsea structures. The tests are performed for Keulegan-Carpenter (KC) numbers relevant for force estimation during lifting operations. Hydrodynamic added mass and damping coefficients are presented. The coefficients are found to be amplitude dependent for all tested configurations. The interaction effects between the plates increase with increasing amplitude and decreasing distance between the plates. For small oscillation amplitudes, compared with the gap between the plates, the plates behave approximately like individual plates. A study of the relation between the damping force and the added mass force for the tested structures illustrates the importance of applying representative damping coefficients in numerical analysis of marine operations. Numerical results are obtained using a potential flow solver (BEM) and a viscous flow solver (CFD). Low-KC added mass coefficients predicted with the BEM are in accordance with the experiments. There is acceptable agreement between the CFD and the experiments. Best agreement is obtained for small KC numbers. As the KC numbers increase, the differences are, in general, larger. This is possibly due to the CFD being based on the two-dimensional laminar flow.
机译:由水平并排板元件组成的九个配置的强制谐波振荡是通过实验和数值进行的。这些配置在垂直方向上振荡,并且代表了Obsea结构的广义泥浆。在提升操作期间,对与力估计相关的keulegan-carpenter(kc)数字进行测试。提出了流体动力学增加的质量和阻尼系数。发现系数是对所有测试配置相关的幅度。平板之间的相互作用效应随着幅度的增加和板之间的距离而增加。对于小的振荡幅度,与板之间的间隙相比,板表现得大约为单独的板。用于测试结构的阻尼力与添加质量力之间的关系的研究说明了在海洋操作的数值分析中应用代表阻尼系数的重要性。使用电位流动求解器(BEM)和粘性流动求解器(CFD)获得数值结果。用BEM预测的低KC添加质量系数是根据实验的。 CFD与实验之间有可接受的协议。对于小型KC号来获得最佳协议。随着KC号的增加,差异通常是更大的。这可能是由于CFD基于二维层流。

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